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Linker length and fusion site composition improve the optical signal of genetically encoded fluorescent voltage sensors.
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Genetically encoded fluorescent voltage sensors using the voltage-sensing domain of Nematostella and Danio phosphatases exhibit fast kinetics.
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Optical consequences of a genetically-encoded voltage indicator with a pH sensitive fluorescent protein.
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Molecular Spies in Action: Genetically Encoded Fluorescent Biosensors Light up Cellular Signals.
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Imaging different cell populations in the mouse olfactory bulb using the genetically encoded voltage indicator ArcLight.
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Mechanism of ArcLight derived GEVIs involves electrostatic interactions that can affect proton wires.
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Engineering Photoactivatability in Genetically Encoded Voltage and pH Indicators.
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Red Fluorescent Genetically Encoded Voltage Indicators with Millisecond Responsiveness.
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Genetically Encoded Fluorescent Biosensors Illuminate the Spatiotemporal Regulation of Signaling Networks.
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Voltage and Calcium Imaging of Brain Activity.
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本文引用的文献

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High-fidelity optical reporting of neuronal electrical activity with an ultrafast fluorescent voltage sensor.
Nat Neurosci. 2014 Jun;17(6):884-9. doi: 10.1038/nn.3709. Epub 2014 Apr 22.
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Fluorescent protein voltage probes derived from ArcLight that respond to membrane voltage changes with fast kinetics.
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Genetically encoded fluorescent voltage sensors using the voltage-sensing domain of Nematostella and Danio phosphatases exhibit fast kinetics.
J Neurosci Methods. 2012 Jul 15;208(2):190-6. doi: 10.1016/j.jneumeth.2012.05.016. Epub 2012 May 24.
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Enzyme domain affects the movement of the voltage sensor in ascidian and zebrafish voltage-sensing phosphatases.
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Engineering and characterization of an enhanced fluorescent protein voltage sensor.
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Three fluorescent protein voltage sensors exhibit low plasma membrane expression in mammalian cells.
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Developments in neuronal cell culture.
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